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Transition Metal−Boryl Compounds: Synthesis, Reactivity, and Structure

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This article is published in Chemical Reviews.The article was published on 1998-12-17. It has received 504 citations till now. The article focuses on the topics: Reactivity (chemistry).

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C−H Activation for the Construction of C−B Bonds

TL;DR: Investigations revealed that the conversion of C-H bonds to C-B bonds was both thermodynamically and kinetically favorable and highlighted the accessible barriers for C- H bond cleavage and B-C bond formation during the borylation of alkanes and arenes.
Journal ArticleDOI

Thermal, Catalytic, Regiospecific Functionalization of Alkanes

TL;DR: The rhodium complex Cp*Rh(eta(4)-C(6)Me(6)) (Cp*, C(5)Me (5); Me, methyl) catalyzes the high-yield formation of linear alkylboranes from commercially available borane reagents under thermal conditions.
Journal ArticleDOI

Diboron(4) Compounds: From Structural Curiosity to Synthetic Workhorse

TL;DR: Although known for over 90 years, only in the past two decades has the chemistry of diboron(4) compounds been extensively explored and these compounds now feature prominently in both metal-catalyzed and metal-free methodologies for the formation of B-C bonds and other processes.
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Journal ArticleDOI

Transition metal pentacoordination

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Platinum(0)-catalyzed diboration of alkynes

TL;DR: In this paper, the first syn-selective addition of tetraalkoxydiboron 1 to alkenes was reported, which was efficiently catalyzed by the platinum(0) complex.
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